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首页> 外文期刊>ECS Journal of Solid State Science and Technology >An Orange-Light Emitting Garnet Phosphor: Tb3Ga5O12:Eu3+
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An Orange-Light Emitting Garnet Phosphor: Tb3Ga5O12:Eu3+

机译:橙色发光石榴石磷:TB3Ga5O12:EU3 +

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Tb3Ga5O12:Eu3+ (TGG:Eu3+) orange-light emitting garnet phosphor was synthesized by the solid-state reaction (SSR) method and subsequent calcination at T-c = 800-1400 degrees C in air. The effects of the Eu3+ activator concentration in (Tb1-xEux)(3)Ga5O12 and calcination temperature (T-c) on the phosphor properties were studied in detail. The strongest Eu3+ luminescence was observed at x similar to 0.05 and at T-c = 1400 degrees C. An exponential dependence was inferred from the X-ray diffraction and photoluminescence (PL) intensities vs 1/T-c plots, yielding Ea similar to 1.3 eV and similar to 4.0 eV for a formation of the host lattice and an activation of the Eu3+ ions in the TGG host, respectively. The PL properties of the TGG:Eu3+ phosphor were investigated in detail using PL excitation (PLE) spectroscopy and PL decay measurements. The PLE and PL decay characteristics showed an evidence of the energy transfer from the TGG host (Tb3+) to Eu3+ by excitation at lambda(ex) <= 500 nm. The internal quantum efficiency upon excitation at lambda(ex) = 380 nm was similar to 61%. Lattice temperature dependence of the PL intensity at T = 20-450 K was also measured and successfully interpreted using the conventional quenching model. A comparative discussion was given on the structural and PL properties of the SSR-grown TGG:Eu3+ phosphor with those of the metal-organic decomposition-grown TGG:Eu3+ one. (C) 2017 The Electrochemical Society. All rights reserved.
机译:TB3GA5O12:EU3 +(TGG:EU3 +)橙色发光石榴石磷光体由固态反应(SSR)方法合成,随后在T-C = 800-1400摄氏度下煅烧。详细研究了EU3 +活化剂浓度(TB1-XEUX)(3)GA5012和煅烧温度(T-C)对磷光体性质的影响。在类似于0.05和Tc​​ = 1400℃的x中观察到最强的EU3 +发光。从X射线衍射和光致发光(PL)强度Vs 1 / TC图中推断指数依赖性,产生类似于1.3eV和类似的EA对于宿主晶格的形成和TGG宿主中的EU3 +离子的形成至4.0 eV。使用PL激励(PLE)光谱和PL衰变测量,详细研究了TGG的PL性能:EU3 +磷光体。 PLE和PL衰减特性显示通过在Lambda(前)<= 500nm的激发中从TGG宿主(TB3 +)到EU3 +的能量转移的证据。 λ(ex)= 380nm激发后的内部量子效率类似于61%。使用传统的淬火模型测量并成功地解释了晶格温度依赖性P1强度的依赖性。对比较讨论是对SSR-生长TGG的结构和PL性能:EU3 +荧光体的结构和PL性能,其中金属 - 有机分解生长TGG:EU3 + 1。 (c)2017年电化学协会。版权所有。

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